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2,185 results for “integrated taxonomy”

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zenodo32/100

Fig. 9 in Integrating UCE Phylogenomics With Traditional Taxonomy Reveals a Trove of New World Syscia Species (Formicidae: Dorylinae)

Fig. 9. Distribution map, face view, lateral view of petiole-AIV, and dorsal view of AIII-AIV of Syscia pervagata (holotype worker), S. peten (holotype worker), S. JTL074 (worker, MCZ-ENT00511564), S. brachyptera (holotype worker), S. valenzuelai (holotype worker), S. JTL071 (worker, FMNHINS0000095759), S. quisquillis (holotype worker), S. sumnichti (holotype worker), S. JTL060 (worker, CASENT0644220), and S. JTL085 (worker, CASENT0602939). Scale bars 0.2 mm. Species are in order of mean HW, which is shown in the lower left of the distribution map. On distribution maps, red dots are sites with UCE sequence data. Red boxes are type locality.

opennotspecifiedMar 2021View details →
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Fig. 2 in Integrating UCE Phylogenomics With Traditional Taxonomy Reveals a Trove of New World Syscia Species (Formicidae: Dorylinae)

Fig. 2. Variation in Syscia subpetiolar process. (A) Subtriangular with flat to concave posterior margin. (B) Subtriangular with convex posterior margin. (C) Subtriangular with small tooth on posterior margin. (D) Subquadrate. (E) Subtriangular with large acute tooth on posterior margin. F. With fenestra and notch on posterior margin.

opennotspecifiedMar 2021View details →
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Fig. 4 in Integrating UCE Phylogenomics With Traditional Taxonomy Reveals a Trove of New World Syscia Species (Formicidae: Dorylinae)

Fig. 4. Illustrations of Syscia measurements. HL: head length, HW: head width, MSL: mesosoma length, AIIIL: abdominal tergite III length, AIIIW: abdominal tergite III width, AIVL: abdominal tergite IV length, AIIVW: abdominal tergite IV width.

opennotspecifiedMar 2021View details →
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Fig. 12 in Integrating UCE Phylogenomics With Traditional Taxonomy Reveals a Trove of New World Syscia Species (Formicidae: Dorylinae)

Fig. 12. Distribution map, face view, lateral view of petiole-AIV, and dorsal view of AIII-AIV of Syscia tolteca (lectotype worker), S. atitlana (holotype worker), S. lacandona (holotype worker), S. JTL049 (worker, CASENT0644222), S. JTL065 (worker, CASENT0602939), S. amblyogyna (holotype worker), S. ticomontana (holotype worker), S. JTL017 (worker, INB0003693097), S. JTL079 (worker, CASENT0642985), and S. transisthmica (holotype worker). Species are in order of mean HW, which is shown in the lower left of the distribution map. Scale bars 0.2 mm. On distribution maps, red dots are sites with UCE sequence data. Red boxes are type locality (not shown for S. tolteca, with type locality 'Guatemala').

opennotspecifiedMar 2021View details →
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Fig. 8 in Integrating UCE Phylogenomics With Traditional Taxonomy Reveals a Trove of New World Syscia Species (Formicidae: Dorylinae)

Fig. 8. Distribution map, face view, lateral view of petiole-AIV, and dorsal view of AIII-AIV of Syscia minuta (holotype worker), S. parva (holotype worker), S. JTL067 (worker, CASENT0644012), S. pollula (holotype worker), S. JTL069 (worker, CASENT0644008), S. JTL068 (queen, CASENT0613276), S. austrella (holotype worker), S. JTL037 (worker, CASENT0635747), S. quisquillis Arizona form (worker, FMNHINS0000095772), and S. boudinoti (holotype worker). Species are in order of mean HW, which is shown in the lower left of the distribution map. Scale bars 0.1 mm for S. minuta to S. JTL037, 0.2 mm for S. quisquillis Arizona form and S. boudinoti. On distribution maps, red dots are sites with UCE sequence data. Red boxes are type locality.

opennotspecifiedMar 2021View details →
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Figure 7 in Integrating DNA and morphological taxonomy to describe diversity in poorly studied microscopic animals: new species of the genus Abrochtha Bryce, 1910 (Rotifera: Bdelloidea: Philodinavidae)

Figure 7. Scanning electron microscopy picture of trophi of Abrochtha sonneborni sp. nov. in caudal view. Scale bar = 10 Mm.

opennotspecifiedMar 2011View details →
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Figure 6 in Integrating DNA and morphological taxonomy to describe diversity in poorly studied microscopic animals: new species of the genus Abrochtha Bryce, 1910 (Rotifera: Bdelloidea: Philodinavidae)

Figure 6. Abrochtha kingi sp. nov.: scanning electron microscopy pictures of details of body morphology. A, head, ventrolateral view; B, antenna; C, foot; D, rostrum; E, epidermis. Scale bars = 10 Mm (A), 5 Mm (B–D), 2 Mm (E).

opennotspecifiedMar 2011View details →
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Figure 5. A in Integrating DNA and morphological taxonomy to describe diversity in poorly studied microscopic animals: new species of the genus Abrochtha Bryce, 1910 (Rotifera: Bdelloidea: Philodinavidae)

Figure 5. A, Abrochtha kingi sp. nov.: habitus in dorsal view. B, Abrochtha sonneborni sp. nov.: habitus in dorsal view. Scale bar = 50 Mm.

opennotspecifiedMar 2011View details →
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Figure 4 in Integrating DNA and morphological taxonomy to describe diversity in poorly studied microscopic animals: new species of the genus Abrochtha Bryce, 1910 (Rotifera: Bdelloidea: Philodinavidae)

Figure 4. Scanning electron microscopy pictures of trophi of Abrochtha meselsoni sp. nov. (A, B) and Abrochtha kingi sp. nov. (C, D). A, C, caudal view; B, D, cephalic view. Scale bar = 5 Mm.

opennotspecifiedMar 2011View details →
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Figure 2 in Integrating DNA and morphological taxonomy to describe diversity in poorly studied microscopic animals: new species of the genus Abrochtha Bryce, 1910 (Rotifera: Bdelloidea: Philodinavidae)

Figure 2. Abrochtha meselsoni sp. nov. A, habitus in dorsal view; B, lateral view. Scale bar = 50 Mm.

opennotspecifiedMar 2011View details →
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Figure 1. Best selected tree from a maximum likelihood reconstruction for the cytochrome c oxidase subunit I in Integrating DNA and morphological taxonomy to describe diversity in poorly studied microscopic animals: new species of the genus Abrochtha Bryce, 1910 (Rotifera: Bdelloidea: Philodinavidae)

Figure 1. Best selected tree from a maximum likelihood reconstruction for the cytochrome c oxidase subunit I data set under the general time reversible model with gamma distribution, displaying all compatible groupings and with average branch lengths proportional to numbers of substitutions per site, indicated by the scale bar. Bootstrap support values above 80% are shown below each branch; posterior probabilities above 0.8 from 36 000 sampled trees from the Bayesian analysis are shown above each branch. Support values for within-species relationships are not shown. Filled circles indicate clades (and singlets) identified by the 4¥ rule; open diamonds indicate clades (and singlets) identified by the generalized mixed yule coalescent model. Names refer to the species and the clonal populations.

opennotspecifiedMar 2011View details →
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Figure 3 in Integrating DNA and morphological taxonomy to describe diversity in poorly studied microscopic animals: new species of the genus Abrochtha Bryce, 1910 (Rotifera: Bdelloidea: Philodinavidae)

Figure 3. Abrochtha meselsoni sp. nov. Scanning electron microscopy pictures of details of body morphology. A, habitus, lateral view; B, head; C, foot; D, antenna; E, rostrum; F, epidermis. Scale bars = 25 Mm (A), 10 Mm (B, E), 5 Mm (C, D), 2 Mm (F).

opennotspecifiedMar 2011View details →
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Supplementary material 4 from: Colgan DJ, Ahyong ST, Mardon K, Brereton IM (2021) Rare specimen identification in an un-integrated taxonomy: implications of DNA sequences from a Taiwanese Philine (Mollusca, Philinidae). ZooKeys 1060: 93-110. https://doi.org/10.3897/zookeys.1060.28809

Figure S3. Phylogenetic relationships of C.559479 based on Maximum Likelihood analysis of the histone H3 dataset.

opencc-zeroSep 2021View details →
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Supplementary material 3 from: Colgan DJ, Ahyong ST, Mardon K, Brereton IM (2021) Rare specimen identification in an un-integrated taxonomy: implications of DNA sequences from a Taiwanese Philine (Mollusca, Philinidae). ZooKeys 1060: 93-110. https://doi.org/10.3897/zookeys.1060.28809

Figure S2. Phylogenetic relationships of C.559479 based on maximum likelihood analysis of the D1 28S rRNA dataset

opencc-zeroSep 2021View details →
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FIGURE 14. Protomiltogramma spp., male terminalia. A–D. Protomiltogramma cincta Townsend. E–F in Integrative taxonomy reveals remarkable diversity in Australian Protomiltogramma (Diptera: Sarcophagidae)

FIGURE 14. Protomiltogramma spp., male terminalia. A–D. Protomiltogramma cincta Townsend. E–F. Protomiltogramma dalbiensis sp. n. G–J. Protomiltogramma grandis sp. n. K–N. Protomiltogramma incana sp. n. Abbreviations: c = cercus, s = surstylus, p = acrophallus. Scale bars = 100 µm.

opennotspecifiedSep 2021View details →
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FIGURE 17. Protomiltogramma laticeps Malloch, morphological variation. A–B. Morphotype with reduced frontal vitta. C–D in Integrative taxonomy reveals remarkable diversity in Australian Protomiltogramma (Diptera: Sarcophagidae)

FIGURE 17. Protomiltogramma laticeps Malloch, morphological variation. A–B. Morphotype with reduced frontal vitta. C–D. "True laticeps" morphotype. Scale bars = 1 mm.

opennotspecifiedSep 2021View details →
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FIGURE 11 in Integrative taxonomy reveals remarkable diversity in Australian Protomiltogramma (Diptera: Sarcophagidae)

FIGURE 11. Protomiltogramma popularis sp. n., paratype, male, Girringun National Park, QLD, 7.i.2017, N.P. Johnston, J.F. Wallman and T. Pape (ANIC). A. Habitus, lateral view. B. Head, lateral view. C. Habitus, dorsal view. D. Head, dorsal view. E. Abdomen, dorsal view. F. Head anterior view. Scale bars = 1 mm.

opennotspecifiedSep 2021View details →
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FIGURE 8 in Integrative taxonomy reveals remarkable diversity in Australian Protomiltogramma (Diptera: Sarcophagidae)

FIGURE 8. Protomiltogramma nigrisensa sp. n., paratype, male, Watheroo National Park, NT, 12.xii.2015, N.P. Johnston, J.F. Wallman and K. Szpila (ANIC). A. Habitus, lateral view. B. Head, lateral view. C. Habitus, dorsal view. D. Head, dorsal view. E. Abdomen, dorsal view. F. Head anterior view. Scale bars = 1 mm.

opennotspecifiedSep 2021View details →
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FIGURE 15. Protomiltogramma spp., male terminalia. A–D in Integrative taxonomy reveals remarkable diversity in Australian Protomiltogramma (Diptera: Sarcophagidae)

FIGURE 15. Protomiltogramma spp., male terminalia. A–D. Protomiltogramma kapnos sp. n. E–H. Protomiltogramma laticeps Malloch. I–L. Protomiltogramma nigrisensa sp. n. M–P. Protomiltogramma nigriseta (Baranov). Abbreviations: c = cercus, s = surstylus and p = acrophallus. Scale bars = 100 µm.

opennotspecifiedSep 2021View details →
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FIGURE 13 in Integrative taxonomy reveals remarkable diversity in Australian Protomiltogramma (Diptera: Sarcophagidae)

FIGURE 13. Protomiltogramma subtilis sp. n., paratype, male, West McDonnell National Park, NT, 12.xi.2017, N.P. Johnston, J.F. Wallman and K. Szpila (ANIC). A. Habitus, lateral view. B. Head, lateral view. C. Habitus, dorsal view. D. Head, dorsal view. E. Abdomen, dorsal view. F. Head anterior view. Scale bars = 1 mm.

opennotspecifiedSep 2021View details →

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International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

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OpenNeuro

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